MARUT
The GPU-Accelerated High-Fidelity CFD Solver for Compressible Flows
(Subsonic, Transonic, Supersonic, and Hypersonic Flows with Real Chemistry)
The GPU-Accelerated High-Fidelity CFD Solver for Compressible Flows
(Subsonic, Transonic, Supersonic, and Hypersonic Flows with Real Chemistry)
MARUT is a high-fidelity computational fluid dynamics (CFD) platform built for simulating complex compressible flows, both reactive and non-reactive. Designed for performance and accuracy, MARUT leverages GPU acceleration to deliver fast, scalable solutions for demanding engineering and scientific applications.
By combining high-order spectral Discontinuous Galerkin methods with adaptive mesh refinement (AMR), MARUT dynamically concentrates computational resources where they are needed most, capturing fine-scale flow features without compromising efficiency. The framework further employs higher-order Strong Stability-Preserving Runge–Kutta (SSP-RK) schemes for time integration, ensuring robust and accurate evolution of both reactive and non-reactive flow dynamics. Its seamless integration of advanced spatial discretization techniques, high-order temporal schemes, and detailed thermochemical modeling enables precise simulation of multi-scale phenomena across a wide range of compressible flow regimes.